Artículo
Field-dependent roughness of moving domain walls in a Pt/Co/Pt magnetic thin film
Cortés Burgos, María José
; Guruciaga, Pamela Carolina
; Jordán, Daniel; Quinteros, Cynthia Paula
; Agoritsas, Elisabeth; Curiale, Carlos Javier
; Granada, Mara
; Bustingorry, Sebastian
Fecha de publicación:
10/2021
Editorial:
American Physical Society
Revista:
Physical Review B
ISSN:
2469-9950
e-ISSN:
2469-9969
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The creep motion of domain walls driven by external fields in magnetic thin films is described by universal features related to the underlying depinning transition. One key parameter in this description is the roughness exponent characterizing the growth of fluctuations of the domain wall position with its longitudinal length scale. The roughness amplitude, which gives information about the scale of fluctuations, however, has received less attention. Albeit their relevance, experimental reports of the roughness parameters, both exponent and amplitude, are scarce. We report here experimental values of the roughness parameters for different magnetic field intensities in the creep regime at room temperature for a Pt/Co/Pt thin film. The mean value of the roughness exponent is , and we show that it can be rationalized as an effective value in terms of the known universal values corresponding to the depinning and thermal cases. In addition, it is shown that the roughness amplitude presents a significant increase with decreasing field. These results contribute to the description of domain wall motion in disordered magnetic thin systems.
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Articulos (UE-INN - NODO BARILOCHE)
Articulos de UNIDAD EJECUTORA INSTITUTO DE NANOCIENCIA Y NANOTECNOLOGIA - NODO BARILOCHE
Articulos de UNIDAD EJECUTORA INSTITUTO DE NANOCIENCIA Y NANOTECNOLOGIA - NODO BARILOCHE
Citación
Cortés Burgos, María José; Guruciaga, Pamela Carolina; Jordán, Daniel; Quinteros, Cynthia Paula; Agoritsas, Elisabeth; et al.; Field-dependent roughness of moving domain walls in a Pt/Co/Pt magnetic thin film; American Physical Society; Physical Review B; 104; 14; 10-2021; 1-9
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